126 lines
3.1 KiB
C++
126 lines
3.1 KiB
C++
//=======================================================================
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// Copyright 1997, 1998, 1999, 2000 University of Notre Dame.
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// Authors: Andrew Lumsdaine, Lie-Quan Lee, Jeremy G. Siek
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//
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// Distributed under the Boost Software License, Version 1.0. (See
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// accompanying file LICENSE_1_0.txt or copy at
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// http://www.boost.org/LICENSE_1_0.txt)
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//=======================================================================
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#include <boost/config.hpp>
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#include <assert.h>
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#include <iostream>
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#include <vector>
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#include <algorithm>
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#include <utility>
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#include <boost/graph/adjacency_list.hpp>
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#include <boost/graph/depth_first_search.hpp>
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#include <boost/graph/visitors.hpp>
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/*
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This calculates the discover finishing time.
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Sample Output
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Tree edge: 0 --> 2
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Tree edge: 2 --> 1
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Back edge: 1 --> 1
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Finish edge: 1 --> 1
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Tree edge: 1 --> 3
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Back edge: 3 --> 1
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Finish edge: 3 --> 1
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Tree edge: 3 --> 4
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Back edge: 4 --> 0
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Finish edge: 4 --> 0
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Back edge: 4 --> 1
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Finish edge: 4 --> 1
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Forward or cross edge: 2 --> 3
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Finish edge: 2 --> 3
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Finish edge: 0 --> 2
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1 10
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3 8
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2 9
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4 7
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5 6
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*/
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using namespace boost;
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using namespace std;
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template <class VisitorList>
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struct edge_categorizer : public dfs_visitor<VisitorList> {
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typedef dfs_visitor<VisitorList> Base;
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edge_categorizer(const VisitorList& v = null_visitor()) : Base(v) { }
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template <class Edge, class Graph>
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void tree_edge(Edge e, Graph& G) {
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cout << "Tree edge: " << source(e, G) <<
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" --> " << target(e, G) << endl;
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Base::tree_edge(e, G);
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}
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template <class Edge, class Graph>
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void back_edge(Edge e, Graph& G) {
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cout << "Back edge: " << source(e, G)
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<< " --> " << target(e, G) << endl;
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Base::back_edge(e, G);
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}
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template <class Edge, class Graph>
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void forward_or_cross_edge(Edge e, Graph& G) {
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cout << "Forward or cross edge: " << source(e, G)
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<< " --> " << target(e, G) << endl;
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Base::forward_or_cross_edge(e, G);
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}
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template <class Edge, class Graph>
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void finish_edge(Edge e, Graph& G) {
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cout << "Finish edge: " << source(e, G) <<
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" --> " << target(e, G) << endl;
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Base::finish_edge(e, G);
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}
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};
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template <class VisitorList>
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edge_categorizer<VisitorList>
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categorize_edges(const VisitorList& v) {
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return edge_categorizer<VisitorList>(v);
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}
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int
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main(int , char* [])
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{
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using namespace boost;
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typedef adjacency_list<> Graph;
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Graph G(5);
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add_edge(0, 2, G);
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add_edge(1, 1, G);
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add_edge(1, 3, G);
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add_edge(2, 1, G);
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add_edge(2, 3, G);
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add_edge(3, 1, G);
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add_edge(3, 4, G);
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add_edge(4, 0, G);
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add_edge(4, 1, G);
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typedef graph_traits<Graph>::vertices_size_type size_type;
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std::vector<size_type> d(num_vertices(G));
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std::vector<size_type> f(num_vertices(G));
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int t = 0;
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depth_first_search(G, visitor(categorize_edges(
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make_pair(stamp_times(&d[0], t, on_discover_vertex()),
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stamp_times(&f[0], t, on_finish_vertex())))));
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std::vector<size_type>::iterator i, j;
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for (i = d.begin(), j = f.begin(); i != d.end(); ++i, ++j)
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cout << *i << " " << *j << endl;
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return 0;
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}
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